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dc.contributor.authorDebenham, J.
dc.contributor.authorGibson, W.
dc.contributor.authorTravers, M.
dc.contributor.authorCampbell, A.
dc.contributor.authorAllison, Garry
dc.date.accessioned2017-03-15T22:16:40Z
dc.date.available2017-03-15T22:16:40Z
dc.date.created2017-02-26T19:31:36Z
dc.date.issued2016
dc.identifier.citationDebenham, J. and Gibson, W. and Travers, M. and Campbell, A. and Allison, G. 2016. Modulation of Stretch-Shortening-Cycle Behavior With Eccentric Loading of Triceps Surae: A Possible Therapeutic Mechanism. Journal of Sport Rehabilitation: 26 (2): pp. 151-158.
dc.identifier.urihttp://hdl.handle.net/20.500.11937/49867
dc.identifier.doi10.1123/jsr.2015-0129
dc.description.abstract

Context: Eccentric exercises are increasingly being used to treat lower-limb musculoskeletal conditions such as Achilles tendinopathy. Despite widespread clinical application and documented efficacy, mechanisms underpinning clinical benefit remain unclear. Positive adaptations in motor performance are a potential mechanism. Objective: To investigate how an eccentric loading intervention influences measures of stretch-shortening-cycle (SSC) behavior during a hopping task. Design: Within-subjects repeated-measures observational study. Setting: University motion-analysis laboratory. Participants: Healthy adults. Interventions: A single intervention of 5 sets of 10 eccentric plantar-flexion contractions at 6 repetitions maximum using a commercial seated calf-raise machine. Main Outcome Measures: Lower-limb stiffness, sagittal-plane ankle kinematics, and temporal muscle activity of the agonist (soleus) and antagonist (tibialis anterior) muscles, measured during submaximal hopping on a custom-built sledge-jump system. Results: Eccentric loading altered ankle kinematics during submaximal hopping; peak angle shifted to a less dorsiflexed position by 2.9° and ankle angle precontact shifted by 4.4° (P < .001). Lower-limb stiffness increased from 5.9 to 6.8 N/m (P < .001), while surface EMG measures of soleus occurred 14–44% earlier (P < .001) after the loading intervention. Conclusions: These findings suggest that eccentric loading alters SSC behavior in a manner reflective of improved motor performance. Decreased ankle excursion, increased lower-limb stiffness, and alterations in motor control may represent a positive adaptive response to eccentric loading. These findings support the theory that mechanisms underpinning eccentric loading for tendinopathy may in part be due to improved “buffering” of the tendon by the neuromuscular system.

dc.publisherHuman Kinetics Publishers INC
dc.titleModulation of Stretch-Shortening-Cycle Behavior With Eccentric Loading of Triceps Surae: A Possible Therapeutic Mechanism
dc.typeJournal Article
dcterms.source.startPage1
dcterms.source.endPage22
dcterms.source.issn1543-3072
dcterms.source.titleJournal of Sport Rehabilitation
curtin.departmentSchool of Physiotherapy and Exercise Science
curtin.accessStatusFulltext not available


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